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Cercosporamide inhibits bone morphogenetic protein receptor type I kinase activity in zebrafish

机译:苯氟酰胺在斑马鱼中抑制骨形态发生蛋白受体I型激酶活性

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ABSTRACT Zebrafish models are well-established tools for investigating the underlying mechanisms of diseases. Here, we identified cercosporamide, a metabolite from the fungus Ascochyta aquiliqiae , as a potent bone morphogenetic protein receptor (BMPR) type I kinase inhibitor through a zebrafish embryo phenotypic screen. The developmental defects in zebrafish, including lack of the ventral fin, induced by cercosporamide were strikingly similar to the phenotypes caused by renowned small-molecule BMPR type I kinase inhibitors and inactivating mutations in zebrafish BMPRs. In mammalian cell-based assays, cercosporamide blocked BMP/SMAD-dependent transcriptional reporter activity and BMP-induced SMAD1/5-phosphorylation. Biochemical assays with a panel of purified recombinant kinases demonstrated that cercosporamide directly inhibited kinase activity of type I BMPRs [also called activin receptor-like kinases (ALKs)]. In mammalian cells, cercosporamide selectively inhibited constitutively active BMPR type I-induced SMAD1/5 phosphorylation. Importantly, cercosporamide rescued the developmental defects caused by constitutively active Alk2 in zebrafish embryos. We believe that cercosporamide could be the first of a new class of molecules with potential to be developed further for clinical use against diseases that are causally linked to overactivation of BMPR signaling, including fibrodysplasia ossificans progressiva and diffuse intrinsic pontine glioma. This article has an associated First Person interview with the first author of the paper.
机译:摘要斑马鱼模型是熟悉的工具,用于调查疾病的潜在机制。在这里,我们鉴定了氰酰胺,来自真菌ascochyta aquiliqiae的代谢物,作为Zebrafish胚胎表型筛网的有效骨形态发生蛋白受体(BMPR)I型激酶抑制剂。斑马鱼中的发育缺陷,包括缺乏由苯胺酰胺诱导的腹侧鳍片的缺陷与由着名的小分子BMPR型激酶抑制剂引起的表型相似,并在斑马鱼BMPR中灭活突变。在哺乳动物的基于细胞的测定中,CercoSporamide阻断了BMP / Smad依赖性转录报告活性和BMP诱导的Smad1 / 5-磷酸化。具有纯化的重组激酶面板的生物化学测定证明了CercoSporamide直接抑制I型BMPR的激酶活性[还称为Activin受体样激酶(ALK)]。在哺乳动物细胞中,氰酰胺选择性地抑制组成型活性BMPR型I型诱导的Smad1 / 5磷酸化。重要的是,氰酰胺夺回了斑马鱼胚胎中由组成型活性Alk2引起的发育缺陷。我们认为森孢瓜酰胺可以是第一类具有潜力的新分子,该潜力进一步发展用于临床用途,临床用途,这些疾病是因果关系的疾病,包括纤维单胰腺癌骨质骨质人进化和弥漫性本征猪胶质瘤。本文有一个相关的第一人称采访本文的第一个作者。

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